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用支化聚乙烯亚胺对自然杀伤细胞进行化学引发用于癌症免疫治疗。

Chemical priming of natural killer cells with branched polyethylenimine for cancer immunotherapy.

机构信息

Department of Biomedical Science, CHA University, Seongnam-si, Korea (the Republic of).

Department of Surgery, Bundang CHA Medical Center, CHA University, Seongnam-si, Korea (the Republic of).

出版信息

J Immunother Cancer. 2022 Aug;10(8). doi: 10.1136/jitc-2022-004964.

Abstract

BACKGROUND

Due to their powerful immune surveillance activity and ability to kill and clear cancer cells, natural killer (NK) cells are an emerging anticancer immunotherapeutic agent. Therefore, there is much interest in developing efficient technologies that further enhance the therapeutic antitumor efficacy of NK cells.

METHODS

To produce chemically primed NK cells, we screened polymers with various electric charges and examined their ability to enhance the cytotoxicity of NK cells. The effect of primary amine and electric charges of 25 kDa branched polyethylenimine (25KbPEI) was investigated by fluorination of the chemical. The role of 25KbPEI in determining the major priming mechanism was investigated in terms of calcium influx into NK cells. In vivo therapeutic efficacy of chemically primed NK cells was evaluated against solid tumor mouse model of triple negative breast and ovarian cancers.

RESULTS

Chem_NK that was produced by the priming activity of 25KbPEI showed potent antitumor activity to various cancer cells. Chem_NK showed an activated phenotype, which manifests as increased expression of activating/adhesion/chemokine receptors and perforin accumulation, leading to enhanced migration ability and antitumor activity. Chem_NK display potent therapeutic efficacy against in vivo mouse model of triple negative breast and ovarian cancers. Fluorination of the primary amine group reduces the activity of 25KbPEI to prime NK cells, indicating that the cationic charge on the chemical plays a critical role in NK cell activation. A major priming mechanism was 25KbPEI-mediated calcium influx into NK cells, which occurred mainly via the Ca2-permeable non-selective cation channel transient receptor potential melastatin 2.

CONCLUSIONS

NK cells can be chemically primed with 25KbPEI to express potent antitumor activity as well as enhanced migration ability. Because PEI is a biocompatible and Food and Drug Administration-approved chemical for biomedical use, these results suggest a cost-effective and simple method of producing therapeutic NK cells.

摘要

背景

由于其强大的免疫监视活性和杀伤清除癌细胞的能力,自然杀伤(NK)细胞是一种新兴的抗癌免疫治疗药物。因此,人们非常关注开发能够进一步提高 NK 细胞治疗抗肿瘤疗效的有效技术。

方法

为了产生化学预刺激的 NK 细胞,我们筛选了具有各种电荷的聚合物,并研究了它们增强 NK 细胞细胞毒性的能力。通过化学氟化研究了伯胺和 25kDa 支化聚乙烯亚胺(25KbPEI)电荷对 NK 细胞的影响。通过研究 NK 细胞内钙流入来研究 25KbPEI 在决定主要启动机制中的作用。评估了化学预刺激的 NK 细胞对三阴性乳腺癌和卵巢癌实体瘤小鼠模型的体内治疗效果。

结果

由 25KbPEI 的启动活性产生的 Chem_NK 对各种癌细胞表现出强大的抗肿瘤活性。Chem_NK 表现出激活的表型,表现为激活/粘附/趋化因子受体表达增加和穿孔素积累,从而增强迁移能力和抗肿瘤活性。Chem_NK 对三阴性乳腺癌和卵巢癌的体内小鼠模型显示出强大的治疗效果。伯胺基团的氟化降低了 25KbPEI 刺激 NK 细胞的活性,表明化学物质上的正电荷在 NK 细胞激活中起关键作用。主要的启动机制是 25KbPEI 介导的 NK 细胞内钙流入,主要通过钙通透性非选择性阳离子通道瞬时受体电位 melastatin 2 发生。

结论

可以用 25KbPEI 对 NK 细胞进行化学预刺激,使其表达强大的抗肿瘤活性和增强的迁移能力。由于 PEI 是一种生物相容性的、经美国食品和药物管理局批准用于生物医学用途的化学物质,这些结果表明这是一种具有成本效益的简单生产治疗性 NK 细胞的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/149e/9422841/873182c1e140/jitc-2022-004964f01.jpg

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